SCC BISYNC Mode
MPC885 PowerQUICC Family Reference Manual, Rev. 2
26-4
Freescale Semiconductor
The SYN1–SYN2 synchronization characters are programmed in the DSR (see
Section 21.2.3, “Data
Synchronization Register (DSR)”
). The BISYNC controller uses the same basic data structure as other
modes; receive and transmit errors are reported through their respective BDs. Line status is reflected on
port C pins and a maskable interrupt is generated when the status changes. There are two basic ways to
handle BISYNC channels:
•
The controller can inspect data on a per-byte basis and interrupt the core each time a byte is
received.
•
The controller can be programmed so software handles the first two or three bytes. The controller
directly handles subsequent data without interrupting the core.
0x40
BDLE
Hword
BISYNC DLE register. Contains the value to be sent as the first byte of a
DLE–SYNC pair and stripped on receive. See
Section 26.8, “SCC BISYNC DLE
Register (BDLE).”
0x42
CHARACTER1
Hword
Control character 1–8. These values represent control characters that the
BISYNC controller recognizes. See
Section 26.6, “SCC BISYNC Control
Character Recognition.”
0x44
CHARACTER2
Hword
0x46
CHARACTER3
Hword
0x48
CHARACTER4
Hword
0x4A
CHARACTER5
Hword
0x4C
CHARACTER6
Hword
0x4E
CHARACTER7
Hword
0x50
CHARACTER8
Hword
0x52
RCCM
Hword
Receive control character mask. Masks CHARACTER
n comparison so control
character classes can be defined. Setting a bit enables and clearing a bit masks
comparison. See
Section 26.6, “SCC BISYNC Control Character Recognition.”
1
From SCC base. SCC base = IMMR + 0x3D00 (SCC2) or 0x3E00 (SCC3) or 0x3F00 (SCC4)
Table 26-1. SCC BISYNC Parameter RAM Memory Map
Offset
1
Name
Width
Description
Summary of Contents for PowerQUICC MPC870
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